Kdm3a (NM_173001) Mouse Untagged Clone

CAT#: MC224246

Kdm3a (untagged) - Mouse lysine (K)-specific demethylase 3A (Kdm3a), transcript variant 1, (10ug)


  "NM_173001" in other vectors (5)

Reconstitution Protocol

USD 1,790.00

6 Weeks*

Size
    • 10 ug

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Specifications

Product Data
Type Mouse Untagged Clone
Tag Tag Free
Symbol Kdm3a
Synonyms 1700105C21Rik; C230043E16Rik; JHDM2a; Jmjd1; Jmjd1a; KDM2A; TGSA; Tsga
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>MC224246 representing NM_173001
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGGTGCTCACGCTCGGAGAAAGTTGGCCAGTATTGGTGGGGAAGCGATTCCTCAGTCTGTCCGCAGCCG
AAGGCAACGAAGGCGGCCAGGACAACTGGGACTTGGAGCGCGTTGCCGAGTGGCCCTGGCTGTCGGGGAC
CATTCGAGCTGTTTCCCACACCGACGTTACTAAGAAAGACTTGAAGGTGTGTGTGGAGTTTGATGGGGAG
TCTTGGAGAAAGAGAAGATGGATAGATGTCTACAGCCTTCAGAGAAAAGCATTTTTAGTAGAGCATAACC
TGGTTTTGGCAGAACGAAAATCACCTGAAGTTCCTGAGCAAGTTATTCAGTGGCCTGCAATAATGTACAA
ATCTCTTCTAGACAAAGCTGGCTTGGGAGCCATAACTTCTGTTCGGTTTCTTGGAGATCAACAAAGTGTA
TTTGTTTCCAAAGACCTTTTGAAACCTATACAGGATGTTAACAGTCTTCGGCTTTCCCTTACTGATAATC
AGACAGTCAGTAAGGAATTTCAAGCTTTGATTGTAAAACATTTGGATGAAAGCCATCTTTTACAAGGTGA
CAAGAACCTTGTTGGTTCAGAAGTAAAAATTTATAGCTTGGACCCATCTACTCAGTGGTTTTCAGCAACT
GTTGTACATGGAAACCCATCATCCAAAACTCTTCAAGTCAACTGTGAGGAGATTCCAGCACTGAAAATTG
TCGACCCAGCACTGATTCATGTTGAAGTTGTACATGACAACTTTGTGACATGTGGTAATTCTACAAGAAC
TGGAGCTGTAAAACGCAAGTCTTCTGAGAATAACGGAAGTTCGGTTTCTAAACAAGCAAAATCTTGTTCT
GAGGCCTCTCCCAGTATGTGTCCTGTACAGTCTGTTCCCACAACAGTGTTTAAGGAGATCCTGCTTGGCT
GTACTGCAGCAACTCCATCTAGCAAGGACCCAAGACAGCAAAATACTCCCCAGGCAGCCAATTCTCCACC
TAACATTGGAGCAAAACTTCCTCAAGGATGTCATAAGCAGAACTTACCAGAAGAACTTTCTTCCTGTCTA
AACACAAAACCTGAAGTACCGAGAACAAAACCAGATGTCTGCAAAGAAGGATTACTTTCTTCAAAATCTT
CTCAGGTTGGAGCTGGAGACTTGAAAATTCTGAGTGAGCCCAAAGGTAGCTGTATCCAGCCTAAAACAAA
CACTGATCAGGAGAGCAGACTGGAGTCTGCTCCACAGCCAGTCACTGGCCTTCCAAAGGAGTGCTTGCCT
GCAAAGACTTCCTCTAAGGCAGAACTGGACATTGCCACCACTCCTGAACTGCAGAAGCATCTAGAACATG
CAGCTTCCACATCCGATGACCTTTCAGATAAGCCAGAAGTGAAAGCAGGTGTCACTAGCCTTAATAGTTG
TGCAGAAAAGAAGGTCGAACCTTCACATTTAGGTTCCCAGTCACAGAATTTAAAGGAAACTTCAGTAAAA
GTAGATAATGAAAGCTGTTGTACAAGAAGCAGTAATAAAACCCAGACTCCCCCAGCCCGGAAGTCAGTTT
TGACAGACCCAGATAAAGTCAGGAAGCTGCAGCAGAGCGGAGAGGCCTTTGTTCAGGATGACTCCTGTGT
TAACATCGTGGCACAGCTGCCCAAGTGTCGGGAGTGTCGACTAGACAGCCTGCGCAAGGATAAGGACCAG
CAGAAGGACTCTCCTGTGTTTTGTCGCTTTTTCCACTTCAGGAGATTACAATTCAACAAGCATGGTGTGT
TGCGGGTAGAAGGCTTCTTAACACCAAACAAGTATGACAGTGAAGCGATTGGCTTGTGGCTGCCTTTGAC
CAAAAATGTTGTGGGGACTGATTTGGACACAGCAAAATATATCCTGGCCAATATTGGAGACCACTTCTGT
CAAATGGTGATTTCTGAGAAGGAAGCTATGTCGACTATTGAGCCACACAGACAGGTTGCTTGGAAACGAG
CTGTCAAAGGAGTTAGAGAAATGTGTGATGTGTGTGACACAACCATTTTCAACCTGCACTGGGTGTGCCC
TCGGTGTGGGTTTGGAGTATGTGTAGATTGCTACCGGATGAAGAGGAAGAACTGCCAACAGGGTGCTGCC
TACAAGACTTTCTCTTGGATAAGGTGTGTGAAGAGTCAGATACATGAGCCTGAGAACCTGATGCCCACAC
AGATTATTCCTGGCAAAGCCCTCTACGATGTTGGAGACATTGTGCATTCTGTCAGAGCAAAATGGGGCAT
AAAGGCCAATTGTCCCTGCTCCAACAGGCAGTTCAAGCTCTTCTCAAAGCCAGCCTTAAAGGAAGACCTG
AAACAGACATCCTTGTCTGGAGAAAAACCAACTCTTGGGACCATGGTCCAGCAAAGTTCCCCTGTTTTGG
AGCCAGTGGCTGTGTGCGGGGAAGCAGCCTCCAAGCCAGCCAGCAGCGTGAAGCCCACCTGTCCCACCAG
CACTTCACCTTTAAACTGGCTAGCTGACCTTACCAGTGGGAATGTCAACAAGGAGAATAAGGAAAAACAG
CTGACTATGCCAATTTTAAAGAATGAAATCAAATGCCTTCCACCCTTGCCCCCTCTGAACAAGCCCAGCA
CAGTCCTCCATACTTTTAACAGCACCATCTTGACACCTGTGAGCAACAATAATTCAGGTTTCCTTAGAAA
TCTTTTGAATTCATCCACAGCAAAGACAGAAAATGGATTGAAAAACACACCCAAAATTCTTGATGACATC
TTTGCCTCTTTGGTGCAAAACAAGACTTCTTCTGATTCATCCAAGAGGCCTCAAGGACTGACAATCAAGC
CTAGCATTCTTGGCTTTGACACTCCTCACTACTGGCTGTGTGACAACCGCCTGCTGTGCTTGCAAGACCC
CAACAATAAGAGCAATTGGAATGTTTTTAGGGAATGCTGGAAACAAGGGCAGCCAGTGATGGTGTCGGGC
GTGCATCATAAATTAAACACTGAACTCTGGAAACCCGAGTCCTTCAGAAAAGAGTTTGGTGAGCAGGAAG
TAGACCTAGTCAATTGTAGGACCAATGAAATCATCACTGGAGCCACAGTCGGAGACTTCTGGGATGGATT
TGAAGATGTTCCAAACCGTTTGAAAAACGACAAAGAAAAAGAACCAATGGTGTTGAAACTTAAGGACTGG
CCGCCAGGAGAAGACTTCAGAGACATGATGCCTTCCAGGTTTGATGATCTGATGGCCAACATTCCACTGC
CTGAGTACACCAGGCGAGATGGCAAACTGAACCTGGCTTCCAGACTGCCAAACTACTTTGTACGGCCAGA
CCTGGGCCCCAAGATGTACAATGCTTATGGATTGATCACTCCAGAGGATCGGAAATATGGGACCACAAAT
CTTCACTTAGATGTATCTGATGCAGCCAATGTCATGGTTTATGTGGGAATTCCCAAAGGACAGTGTGAAC
AAGAAGAAGAAGTCCTTAGAACCATCCAAGATGGAGATTCTGATGAACTCACAATCAAGAGATTTATTGA
AGGAAAAGAGAAGCCAGGAGCCCTTTGGCACATATATGCTGCTAAAGACACAGAGAAGATAAGAGAATTC
CTTAAAAAGGTATCAGAGGAGCAGGGTCAAGACAACCCTGCAGACCATGACCCTATCCACGATCAGAGCT
GGTATTTAGACCGATCGCTGAGAAAGCGCCTCTATCAAGAGTACGGCGTGCAAGGCTGGGCTATTGTACA
GTTTCTTGGGGATGTGGTGTTTATCCCAGCAGGAGCGCCACATCAGGTTCATAACTTATACAGCTGTATC
AAAGTGGCTGAAGACTTTGTGTCTCCAGAGCATGTTAAACACTGCTTCTGGCTTACTCAGGAATTCCGTT
ACTTGTCACAGACTCATACCAACCATGAAGATAAATTGCAGGTGAAAAATGTTATCTACCATGCAGTGAA
AGATGCAGTTGCTATGCTGAAAGCCAGTGAATCCAGTTTGGGCAAACCTTAA


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-MluI     
ACCN NM_173001
ORF Size 3972 bp
Insert Size 3972
OTI Disclaimer Our molecular clone sequence data has been matched to the reference identifier above as a point of reference. Note that the complete sequence of our molecular clones may differ from the sequence published for this corresponding reference, e.g., by representing an alternative RNA splicing form or single nucleotide polymorphism (SNP).
Reference Data
RefSeq NM_173001.3, NP_766589.1
RefSeq Size 4857
RefSeq ORF 3972
Locus ID 104263

Other Versions

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